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The effects of surface-modified graphene nanoplatelets on the sliding wear properties of basalt fibers-reinforced epoxy composites

机译:表面改性石墨烯纳米孔对玄武岩纤维增强环氧复合材料滑动磨损性能的影响

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Possessing unique designs and properties absent in conventional materials, nanocomposites have made a remarkable imprint in science and technology. This is particularly true regarding the polymer matrix composites when they are further reinforced with nanoparticles. In this study, the effects of different weight percentages (0, 0.1, 0.2, 0.3, 0.4, and 0.5) of surface-modified graphene nanoplatelets (GNPs) on the microhardness and wear properties of basalt fibers/epoxy composites were investigated. The GNPs were surface modified by silane, and the composites were made by the hand lay-up method. The wear tests were conducted under two different loads of 20 and 40 N. The best wear properties were achieved at 0.3 wt % GNPs as a result of the GNPs' self-lubrication property and the formation of a stable transfer/lubricating film at the pin and disk interface. Moreover, the friction coefficient was lower at the higher normal load of 40 N. The microscopic studies by FESEM and SEM showed that the presence of GNPs up to 0.3 wt % led to the stability of the transfer/lubricating film by enhancing the adhesion of the basalt fibers to the epoxy resin. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47986.
机译:纳米复合材料在常规材料中具有独特的设计和性质,在科学和技术方面已经成为了显着的印记。当通过纳米颗粒进一步增强它们时,这对于聚合物基质复合材料尤其如此。在该研究中,研究了不同重量百分比(0,0.1,0.2,0.3,0.4,0.4,0.4,0.4,0.5)的表面改性石墨烯纳米片(GNP)对玄武岩纤维/环氧复合材料的微硬度和磨损性能的影响。通过硅烷改性GNPS表面,并通过手叠层制造复合材料。磨损试验在两种不同的20和40 n下进行。由于GNPS的自润滑性能,在0.3wt%GNPS下实现了最佳磨损性能,并在销钉处形成稳定的转移/润滑膜和磁盘界面。此外,在40 n的较高正常负荷下摩擦系数较低。通过FESEM和SEM的微观研究表明,通过增强粘附力,GNP的存在高达0.3wt%导致转移/润滑膜的稳定性玄武岩纤维到环氧树脂。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47986。

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